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Free-space optical communications using orbital-angular-momentum multiplexing combined with MIMO-based spatial multiplexing

机译:使用轨道角动量复用与基于MIMO的空间复用相结合的自由空间光通信

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We explore the potential of combining the advantages of multiple-input multiple-output (MIMO)-based spatial multiplexing with those of orbital angular momentum (OAM) multiplexing to increase the capacity of free-space optical (FSO) communications. We experimentally demonstrate an 80 Gbit/s FSO system with a 2 x 2 aperture architecture, in which each transmitter aperture contains two multiplexed data-carrying OAM modes. Inter-channel crosstalk effects are minimized by the OAM beams' inherent orthogonality and by the use of 4 x 4 MIMO signal processing. Our experimental results show that the bit-error rates can reach below the forward error correction limit of 3.8 x 10(-3) and the power penalties are less than 3.6 dB for all channels after MIMO processing. This indicates that OAM and MIMO-based spatial multiplexing could be simultaneously utilized, thereby providing the potential to enhance system performance. (C) 2015 Optical Society of America
机译:我们探索了将基于多输入多输出(MIMO)的空间复用优势与轨道角动量(OAM)复用优势相结合以增加自由空间光学(FSO)通信容量的潜力。我们通过实验演示了一个具有2 x 2孔径架构的80 Gbit / s FSO系统,其中每个发射机孔径包含两个复用的数据传输OAM模式。通过OAM波束固有的正交性和使用4 x 4 MIMO信号处理,可最大程度地减少通道间串扰效应。我们的实验结果表明,在进行MIMO处理之后,所有通道的误码率都可以达到3.8 x 10(-3)的前向纠错极限以下,功率损失小于3.6 dB。这表明可以同时利用基于OAM和MIMO的空间复用,从而具有增强系统性能的潜力。 (C)2015年美国眼镜学会

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